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晶格中量子霍尔态的精确母哈密顿量。

Exact parent Hamiltonian for the quantum Hall states in a lattice.

机构信息

Laboratory of Atomic and Solid State Physics, Cornell University, Ithaca, New York, USA.

出版信息

Phys Rev Lett. 2010 Nov 19;105(21):215303. doi: 10.1103/PhysRevLett.105.215303.

Abstract

We study lattice models of charged particles in uniform magnetic fields. We show how longer range hopping can be engineered to produce a massively degenerate manifold of single-particle ground states with wave functions identical to those making up the lowest Landau level of continuum electrons in a magnetic field. We find that in the presence of local interactions, and at the appropriate filling factors, Laughlin's fractional quantum Hall wave function is an exact many-body ground state of our lattice model. The hopping matrix elements in our model fall off as a Gaussian, and when the flux per plaquette is small compared to the fundamental flux quantum one only needs to include nearest and next-nearest neighbor hoppings. We suggest how to realize this model using atoms in optical lattices, and describe observable consequences of the resulting fractional quantum Hall physics.

摘要

我们研究了在均匀磁场中带电粒子的格点模型。我们展示了如何通过更长程的跳跃来产生具有相同波函数的单粒子基态的大规模简并流形,这些波函数与磁场中连续电子的最低朗道能级组成相同。我们发现,在存在局域相互作用的情况下,并且在适当的填充因子下,劳克林的分数量子霍尔波函数是我们格点模型的精确多体基态。我们模型中的跳跃矩阵元呈高斯衰减,并且当每个 plaquette 的磁通与基本磁通量子相比很小时,只需要包含最近邻和次近邻跳跃。我们建议如何使用光学晶格中的原子来实现这个模型,并描述由此产生的分数量子霍尔物理的可观测后果。

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